This thesis presents a general non-variational approach to the solution of three-body Schrödinger's equation with Coulomb interactions, based on the utilization of symmetries intrinsic to the three-body Laplacian operator first proposed by W.Y.Hsiang. Through step by step reductions, the center of mass degree of freedom is first removed, followed by the separation of all the rotational degrees of freedom, leading to a coupled partial differential equations (PDEs) in terms of the rotationally invariant internal variables {f1, f2, f3}. A crucial observation is that in the subspace where all the rotational degrees of freedom have been removed, there is an intrinsic spherical symmetry which can be fully utilized through the introduction of hyp...
15 pags., 9 figs., 1 tab. ; This article belongs to the special issue “30th anniversary of Few-Body ...
"A program to solve the quantum-mechanical collinear three-body Coulomb problem is described and ill...
The nonrelativistic ionization energy levels of a helium atom are calculated for S, P, and D states....
We present a non-variational, kinetic energy operator approach to the solution of quantum three-body...
We present a general approach for the solution of the three-body problem for a general interaction a...
We present a spectral method of configuration-interaction type for three-dimensional helium which co...
16 pagesInternational audienceWe study the three-body Coulomb problem in two dimensions and show how...
The three-body Schrödinger equation of the system composed of an α particle He2+, a negatively charg...
We investigate high-lying doubly excited nonautoionizing states of helium with total angular momentu...
AbstractThe presence of multiple Coulomb centers in molecules or solids poses a challenge when solvi...
In this work, a final state wave function is constructed which represents a solution of the three-bo...
We prove that the Schrödinger equation with the electrostatic potential energy expressed by the Coul...
We prove that the Schrödinger equation with the electrostatic potential energy expressed by the Coul...
The quantum mechanical problem posed by the internal motion of three particles subject to Coulomb in...
The quantum mechanical problem posed by the internal motion of three particles subject to Coulomb in...
15 pags., 9 figs., 1 tab. ; This article belongs to the special issue “30th anniversary of Few-Body ...
"A program to solve the quantum-mechanical collinear three-body Coulomb problem is described and ill...
The nonrelativistic ionization energy levels of a helium atom are calculated for S, P, and D states....
We present a non-variational, kinetic energy operator approach to the solution of quantum three-body...
We present a general approach for the solution of the three-body problem for a general interaction a...
We present a spectral method of configuration-interaction type for three-dimensional helium which co...
16 pagesInternational audienceWe study the three-body Coulomb problem in two dimensions and show how...
The three-body Schrödinger equation of the system composed of an α particle He2+, a negatively charg...
We investigate high-lying doubly excited nonautoionizing states of helium with total angular momentu...
AbstractThe presence of multiple Coulomb centers in molecules or solids poses a challenge when solvi...
In this work, a final state wave function is constructed which represents a solution of the three-bo...
We prove that the Schrödinger equation with the electrostatic potential energy expressed by the Coul...
We prove that the Schrödinger equation with the electrostatic potential energy expressed by the Coul...
The quantum mechanical problem posed by the internal motion of three particles subject to Coulomb in...
The quantum mechanical problem posed by the internal motion of three particles subject to Coulomb in...
15 pags., 9 figs., 1 tab. ; This article belongs to the special issue “30th anniversary of Few-Body ...
"A program to solve the quantum-mechanical collinear three-body Coulomb problem is described and ill...
The nonrelativistic ionization energy levels of a helium atom are calculated for S, P, and D states....